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重温材料中的静电学:自由电荷与线性、均匀且各向同性电介质相结合的情况。

Electrostatics in Materials Revisited: The Case of Free Charges Combined with Linear, Homogeneous, and Isotropic Dielectrics.

作者信息

Stamopoulos Dimosthenis

机构信息

Department of Physics, School of Science, National and Kapodistrian University of Athens, Zografou Panepistimioupolis, 15784 Athens, Greece.

出版信息

Materials (Basel). 2024 Oct 15;17(20):5046. doi: 10.3390/ma17205046.

Abstract

Here we revisit the electrostatics of material systems comprising of free charges and linear, homogeneous, and isotropic (LHI) dielectrics. We focus on () suggesting that this is the vector field of electrostatics. We show that () is sufficient to conceptually describe all underlying physics and to mathematically accomplish all necessary calculations, beforehand, independently of the vector fields () and () that, if needed, can be easily calculated from (). To this effect, we introduce a P-D electric susceptibility, χ, with -1≤χε≤0, that couples linearly () with () (instead of the standard P-E electric susceptibility, χ, with 0≤χe<∞, that couples linearly () with ()). This concept restores the somehow misleading causality/feedback between () and () of the standard formulation, captures efficiently the underlying physics, enables electrostatics to obtain a form analogous to that of magnetostatics, and facilitates analytical/computational calculations in relevant systems. To document these claims, we provide technical means, among others, the scalar potential, Ufr, and clarify the conditions that enable the calculation of () on a standalone basis, directly from the charge density, ρf, and the electric susceptibility, χ, of the LHI dielectrics. Our concept sets interesting perspectives for the treatment of all dielectrics.

摘要

在这里,我们重新审视由自由电荷以及线性、均匀且各向同性(LHI)电介质组成的材料系统的静电学。我们着重于(),表明这就是静电学的矢量场。我们证明,()足以在概念上描述所有潜在的物理现象,并在数学上完成所有必要的计算,而且事先无需依赖矢量场()和(),如果需要的话,这两个矢量场可以很容易地从()计算得出。为此,我们引入了一个P - D电极化率χ,其中 - 1≤χε≤0,它将()与()线性耦合(而不是标准的P - E电极化率χ,其中0≤χe<∞,它将()与()线性耦合)。这个概念恢复了标准公式中()与()之间某种误导性的因果关系/反馈,有效地捕捉了潜在的物理现象,使静电学能够获得类似于静磁学的形式,并便于在相关系统中进行解析/计算。为了证明这些主张,我们提供了技术手段,其中包括标量势Ufr,并阐明了能够直接根据LHI电介质的电荷密度ρf和电极化率χ独立计算()的条件。我们的概念为所有电介质的处理提供了有趣的视角。

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